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时间分辨 RNA 测序为理解感染嗜水气单胞菌后欧鳗(Anguilla anguilla)肠道免疫反应提供了新的认识。

Time-resolved RNA-seq provided a new understanding of intestinal immune response of European eel (Anguilla anguilla) following infection with Aeromonas hydrophila.

机构信息

State Key Laboratory of Freshwater Ecology and Biotechnology, Key Laboratory of Aquaculture Disease Control, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, Hubei Province, 430072, China.

Engineering Research Center of the Modern Technology for Eel Industry, Ministry of Education PR China, Jimei University, Xiamen, 361021, China.

出版信息

Fish Shellfish Immunol. 2020 Oct;105:297-309. doi: 10.1016/j.fsi.2020.06.059. Epub 2020 Jul 21.

Abstract

No studies systematically examined the intestinal immune response for yellow stage of European eel (Anguilla anguilla) with Aeromonas hydrophila infection by time-resolved RNA-seq. Here, we examined transcriptional profiles of the intestines at three-time points following infection with A. hydrophila. Intraperitoneal injections caused mortalities within 48 h post-injection (hpi), with the survival rate 87.5% at 24 hpi and 83.9% at 48 hpi. The result from KEGG pathway enrichment analysis showed that the immune related "cytosolic DNA-sensing pathway" was significantly enriched at the first and second time points (6 hpi and 18 hpi), with the up-regulated expression of irf3, il1b, tnfaip3, cxcl8a, ap1-2, c-fos, polr3d, polr3g and polr3k both at 6 hpi and 18 hpi, but not at the third time point (36 hpi). According to the KEGG annotation, 326 immune and inflammation-related DEGs were found. The co-expression network of those 326 DEGs revealed the existence of three modules, and tlr1 was found to be in the center of the biggest module which contained massive DEGs from "signal transduction" and "transport and catabolism". The c3 isoforms showed different expression pattern among the three time points, indicating a unique activation of complement systems at 18 hpi. Furthermore, two cathelicidins (aaCATH_1 and aaCATH_2) were highly up-regulated at the first two time points, and the bacterial growth inhibition assay revealed their antibacterial properties against A. hydrophila. Our data indicated the important roles of cytosolic DNA-sensing pathway, as well as transcripts including tlr1, c3, polr and cathelicidins in the intestine of A. anguilla in response to A. hydrophila infection. The present study will provide leads for functional studies of host-pathogen interactions.

摘要

尚无研究通过时间分辨 RNA 测序系统地检查受嗜水气单胞菌感染的黄化阶段的欧鳗(Anguilla anguilla)的肠道免疫反应。在这里,我们检查了感染嗜水气单胞菌后三个时间点的肠转录谱。腹腔注射在注射后 48 小时内导致死亡(hpi),24 hpi 时的存活率为 87.5%,48 hpi 时的存活率为 83.9%。KEGG 途径富集分析的结果表明,免疫相关的“胞质 DNA 感应途径”在第一个和第二个时间点(6 hpi 和 18 hpi)显著富集,irf3、il1b、tnfaip3、cxcl8a、ap1-2、c-fos、polr3d、polr3g 和 polr3k 的表达均上调在 6 hpi 和 18 hpi,但不在第三个时间点(36 hpi)。根据 KEGG 注释,发现了 326 个免疫和炎症相关的 DEG。这些 326 个 DEG 的共表达网络显示存在三个模块,并且 tlr1 位于包含大量来自“信号转导”和“运输和分解代谢”的 DEG 的最大模块的中心。c3 同工型在三个时间点的表达模式不同,表明在 18 hpi 时补体系统的独特激活。此外,两种抗菌肽(aaCATH_1 和 aaCATH_2)在前两个时间点高度上调,并且细菌生长抑制测定表明它们对嗜水气单胞菌具有抗菌特性。我们的数据表明,细胞质 DNA 感应途径以及包括 tlr1、c3、polr 和抗菌肽在内的转录物在欧鳗的肠道中对嗜水气单胞菌感染的反应中发挥重要作用。本研究将为宿主-病原体相互作用的功能研究提供线索。

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